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[Microano-engineering to control growth of neuronal cells and tissue engineering applied to the central nervous system].

机译:微型/纳米工程控制神经元细胞的生长和应用于中枢神经系统的组织工程。

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摘要

Central nervous system pathologies are often characterized by the loss of cell populations. A promising therapy now being developed consists in using bioactive materials, associating grafted cells to biopolymers which provide a scaffold for the in vitro building of new tissues, to be implanted in vivo. In the present article, the state of the art of this field, at crossroads between microtechnology and neuroscience, is described in detail; thereafter our own approach and results about interactions between adult human neural stem cells and microstructured polymers are summarized and discussed. In a second part, some central nervous system repair strategies, based on cerebral tissue engineering, are presented. We will report the main results of our studies to work out and characterize in vivo a cerebral bioprosthesis.
机译:中枢神经系统病理通常以细胞数量减少为特征。现在正在开发的有前途的疗法包括使用生物活性材料,将移植的细胞与生物聚合物相关联,该生物聚合物为体外构建新的组织提供了支架,从而可以在体内植入。在本文中,详细描述了微技术和神经科学之间交叉领域的最新技术。此后,我们总结并讨论了我们自己的方法以及关于成人神经干细胞与微结构聚合物之间相互作用的结果。在第二部分中,介绍了一些基于脑组织工程的中枢神经系统修复策略。我们将报告我们研究的主要结果,以在体内研究和表征大脑生物假体。

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